RESEARCH / PARTICIPATIONBack to the library
← Find a study
Recruiting · registry status

Understanding the brain networks that control movement

Researchers are studying how different brain areas work together to control movement, including in people with Parkinson’s and other movement disorders.

Testing a treatment or activity · Study reference: NCT04957095

Plain-language introduction written with AI from the registry; not independently checked by a clinician. Read the original details below ↓

Open the official registry record ↗

Who can join?

Ages 18 years to 89 years · Does not accept healthy volunteers

These are starting points, not the full rules. The research team can tell you whether the study is right for your situation.

Read all the rules for taking part

Sex eligibility reported by registry: all

Inclusion Criteria: * Diagnosis of Parkinson's disease who have been recommended to undergo deep brain stimulation for management of their movement disorder * Preoperative MRI without evidence of cortical or subdural adhesions or vascular abnormalities * Willingness and ability to cooperate during conscious operative procedure for up to 40 minutes Exclusion Criteria: * Patients with recent use (within one week) of anticoagulant or antiplatelet agents * Neurocognitive testing indicating amnestic cognitive deficits
Full study name & original research details

Official study title

Motor Network Physiology Characterization During Deep Brain Stimulation Surgery

Short title used by the registry

Motor Network Physiology

Original description

The brain networks controlling movement are complex, involving multiple areas of the brain. Some neurological disorders, like Parkinson's disease (PD) and essential tremor (ET), cause abnormalities in these brain networks. Deep brain stimulation is a treatment that is used to treat these types of neurological diseases and is thought to help patients by modulating brain networks responsible for movement. Levodopa medication is also used to modulate this brain networks in patients with PD. The overall objective is to develop a unified theory of basal ganglia thalamocortical (BGTC) circuit dynamics that accounts for disease symptomatology, movement, and their inter-relationship. The underlying hypothesis, is that the rigidity and bradykinesia of PD are fundamentally related to excessive functional coupling across nodes in the BGTC motor circuit impeding effective information flow. In this research, the investigator will take advantage of the unique opportunity provided by awake deep brain stimulation surgery to learn more about how the brain functions in a diseased state and how deep brain stimulation changes these networks to make movement more normal. The investigator will simultaneously assess cortical and subcortical electrophysiology in relation to clinical symptoms and behavioral measures and in response to deep brain stimulation, cortical stimulation, and pharmacologic therapy in patients undergoing Deep Brain Stimulation (DBS) implantation surgery.

Conditions reported: Parkinson Disease; Essential Tremor

Study type
Interventional
Interventions
Apomorphine Injectable Solution; Subcortical Stimulation
Phases
NA
Sponsor
University of Texas Southwestern Medical Center
Start date reported by registry
2022-02-18 (actual)

Registry updated: 2026-10-01 · Status last verified by the registry submitter: 2026-09

Registry records retrieved 2026-10-11 (UTC). Individual records may have older updates. Recruitment and eligibility must be confirmed with the study team.

Contact the research team

Public study contacts supplied to the registry. Ask whether recruitment is still open and what participation involves.

Nader Pouratian, MD, PhD · (214)645-5465 · nader.pouratian@utsouthwestern.edu

Sachil Chilukuri · 2146455465 · sahil.chilukuri@utsouthwestern.edu

Study locations

Site status can differ from overall study status. “Status not reported” means local availability needs confirmation. Remote participation and travel arrangements must be checked with the team.

UT Southwestern Medical Center

Dallas, Texas, United States

Recruiting

Sahil Chilukuri · sahil.chilukuri@utsouthwestern.edu

Nader Pouratian · nader.pouratian@utsouthwestern.edu

The original descriptions and participation rules come from the registry. Participation is voluntary and does not guarantee benefit.